Pulse Brain · Growing Health Evidence Index
Peer-reviewed

Monte Carlo simulations of the detailed iron absorption line profiles from thermal winds in X-ray binaries

Ryota Tomaru, Chris Done, Hirokazu Odaka, Shin Watanabe, Tadayuki Takahashi

Monthly Notices of the Royal Astronomical Society · 2018

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Summary

Blue–shifted absorption lines from highly ionised iron are seen in some high inclination X-ray binary systems, indicating the presence of an equatorial disc wind. This launch mechanism is under debate, but thermal driving should be ubiquitous. X-ray irradiation from the central source heats disc surface, forming a wind from the outer disc where the local escape velocity is lower than the sound speed. The mass loss rate from each part of the disc is determined by the luminosity and spectral shape of the central source. We use these together with an assumed density and velocity structure of the wind to predict the column density and ionisation state, then combine this with a Monte-Carlo radiation transfer to predict the detailed shape of the absorption (and emission) line profiles. We test t

Source type
Peer-reviewed study
DOI
10.1093/mnras/sty336
Catalogue ID
BFmoakvhek-927b9l
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